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利用昆虫作为活体生物工厂生产功能性活性人类生长因子。

Production of functional active human growth factors in insects used as living biofactories.

作者信息

Dudognon Benoit, Romero-Santacreu Lorena, Gómez-Sebastián Silvia, Hidalgo Ana B, López-Vidal Javier, Bellido María L, Muñoz Eduardo, Escribano José M

机构信息

Alternative Gene Expression S.L. (ALGENEX), Centro empresarial, Parque Científico y Tecnológico de la Universidad Politécnica de Madrid, Campus de Montegancedo, Pozuelo de Alarcón, 28223 Madrid, Spain.

Vivacell Biotechnology España S.L. Parque Científico Tecnológico Rabanales, 21, c/Cecilia Payne, Parcela ID 8.1, 14014 Córdoba, Spain.

出版信息

J Biotechnol. 2014 Aug 20;184:229-39. doi: 10.1016/j.jbiotec.2014.05.030. Epub 2014 Jun 7.

Abstract

Growth factors (GFs) are naturally signalling proteins, which bind to specific receptors on the cell surface. Numerous families of GFs have already been identified and remarkable progresses have been made in understanding the pathways that these proteins use to activate/regulate the complex signalling network involved in cell proliferation or wound healing processes. The bottleneck for a wider clinical and commercial application of these factors relay on their scalable cost-efficient production as bioactive molecules. The present work describes the capacity of Trichoplusia ni insect larvae used as living bioreactors in combination with the baculovirus vector expression system to produce three fully functional human GFs, the human epidermal growth factor (huEGF), the human fibroblast growth factor 2 (huFGF2) and the human keratinocyte growth factor 1 (huKGF1). The expression levels obtained per g of insect biomass were of 9.1, 2.6 and 3mg for huEGF, huFGF2 and huKGF1, respectively. Attempts to increase the productivity of the insect/baculovirus system we have used different modifications to optimize their production. Additionally, recombinant proteins were expressed fused to different tags to facilitate their purification. Interestingly, the expression of huKGF1 was significantly improved when expressed fused to the fragment crystallizable region (Fc) of the human antibody IgG. The insect-derived recombinant GFs were finally characterized in terms of biological activity in keratinocytes and fibroblasts. The present work opens the possibility of a cost-efficient and scalable production of these highly valuable molecules in a system that favours its wide use in therapeutic or cosmetic applications.

摘要

生长因子(GFs)是天然的信号蛋白,可与细胞表面的特定受体结合。现已鉴定出众多生长因子家族,并且在理解这些蛋白用于激活/调节参与细胞增殖或伤口愈合过程的复杂信号网络的途径方面取得了显著进展。这些因子更广泛的临床和商业应用的瓶颈在于其作为生物活性分子的可扩展的经济高效生产。本研究描述了将粉纹夜蛾昆虫幼虫用作活生物反应器并结合杆状病毒载体表达系统来生产三种功能齐全的人类生长因子的能力,即人类表皮生长因子(huEGF)、人类成纤维细胞生长因子2(huFGF2)和人类角质形成细胞生长因子1(huKGF1)。每克昆虫生物量获得的表达水平分别为:huEGF为9.1毫克、huFGF2为2.6毫克、huKGF1为3毫克。为提高我们所使用的昆虫/杆状病毒系统的生产力,我们尝试了不同的改良方法以优化其生产。此外,重组蛋白在表达时融合了不同的标签以便于纯化。有趣的是,当huKGF1与人类抗体IgG的可结晶片段(Fc)融合表达时,其表达显著提高。最后,对昆虫来源的重组生长因子在角质形成细胞和成纤维细胞中的生物活性进行了表征。本研究为在一个有利于其在治疗或美容应用中广泛使用的系统中经济高效且可扩展地生产这些高价值分子开辟了可能性。

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